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Joint Resource Optimization for Cognitive Sensor Networks with SWIPT-Enabled Relay

机译:具有启用SWIPT的中继的认知传感器网络的联合资源优化

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摘要

Energy-constrained wireless networks, such as wireless sensor networks (WSNs), are usually powered by fixed energy supplies (e.g., batteries), which limits the operation time of networks. Simultaneous wireless information and power transfer (SWIPT) is a promising technique to prolong the lifetime of energy-constrained wireless networks. This paper investigates the performance of an underlay cognitive sensor network (CSN) with SWIPT-enabled relay node. In the CSN, the amplify-and-forward (AF) relay sensor node harvests energy from the ambient radio-frequency (RF) signals using power splitting-based relaying (PSR) protocol. Then, it helps forward the signal of source sensor node (SSN) to the destination sensor node (DSN) by using the harvested energy. We study the joint resource optimization including the transmit power and power splitting ratio to maximize CSN’s achievable rate with the constraint that the interference caused by the CSN to the primary users (PUs) is within the permissible threshold. Simulation results show that the performance of our proposed joint resource optimization can be significantly improved.
机译:能量受限的无线网络(例如无线传感器网络(WSN))通常由固定的能源(例如电池)供电,这限制了网络的运行时间。同时进行无线信息和功率传输(SWIPT)是延长能量受限无线网络寿命的一项有前途的技术。本文研究具有启用SWIPT的中继节点的底层认知传感器网络(CSN)的性能。在CSN中,放大转发(AF)中继传感器节点使用基于功率分配的中继(PSR)协议从环境射频(RF)信号中收集能量。然后,它通过使用收集的能量帮助将源传感器节点(SSN)的信号转发到目标传感器节点(DSN)。我们研究了包括发射功率和功率分配比在内的联合资源优化,以最大程度地限制CSN对主要用户(PU)的干扰,从而最大程度地提高CSN的可达到的速率。仿真结果表明,我们提出的联合资源优化的性能可以得到显着改善。

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